1) high-speed communication systems in limited transmission bandwidth

窄带高速无线通信系统
1.
As a result, we should consider balancing the efficiency and the reliability, and design the high-speed communication systems in limited transmission bandwidth, which .
因此在本文第三章,引入连续相位调制技术(CPM)来结合TCM技术从而进一步提高频带的利用率,达到效率和可靠性的最优结合,这一技术为窄带高速无线通信系统提供了有效的解决。
2) simulation of high speed wireless communication system

高速无线通信系统仿真
4) the narrow band communication system

窄带通信系统
1.
Based on RS coding and transforming high-order waveform modulation,this paper proposed a solu- tion to make the best of channel bandwidth and signal power and reduce the receiver demand to the SNR,using this technique in the narrow band communication system,then analyzing the performance in matlab.
本文采用 RS 编译码+高阶波形编码调制解调的方法,设计有效利用信道带宽和信号功率而又提供有效降低接收信噪比的新型调制解调方案,并将其应用于窄带通信系统,通过 Matlab 仿真分析其性能。
5) BRadio

宽带无线移动通信系统
1.
TDS-OFDM Transmission Method Used in BRadio Downlink;

一种适用于宽带无线移动通信系统下行链路的TDS-OFDM发送方法
6) broadband wireless communication system

宽带无线通信系统
1.
OFDM has been regarded as the key technology for future broadband wireless communication systems, due to its robust to multipath-fading and high frequency efficiency.
OFDM技术以其有效对抗多径衰落、频谱利用率较高的优点,成为未来宽带无线通信系统的关键技术。
补充资料:无线电通信波段(见无线电通信)
无线电通信波段(见无线电通信)
radio communication wave range
wuxiandian tongXin boduan无线电通信波段(rads。。ommunicationWaVe range)见无线电通信。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
参考词条